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If the field estimated infiltration rate of the underlying native soil (f<sub>f</sub>) is less than 15 mm/h, include an underdrain.
 
If the field estimated infiltration rate of the underlying native soil (f<sub>f</sub>) is less than 15 mm/h, include an underdrain.
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==Select a surface ponding depth to begin sizing with:==
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==Select a surface ponding depth to begin sizing with==
 
* Step 2: Determine a maximum surface ponding depth (''d<sub>p, max</sub>'')
 
* Step 2: Determine a maximum surface ponding depth (''d<sub>p, max</sub>'')
 
For practices without underdrains:<br>
 
For practices without underdrains:<br>
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*48 = Maximum permissible drainage time for ponded water (h)
 
*48 = Maximum permissible drainage time for ponded water (h)
 
*Note that in designs without underdrains, conceptually the drainage of ponded water is limited by infiltration through the base of the practice.}}<br>
 
*Note that in designs without underdrains, conceptually the drainage of ponded water is limited by infiltration through the base of the practice.}}<br>
For practices with underdrains see recommended maximum ponding depths for each filter media blend in the table above.<br>
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For practices with underdrains see recommended maximum surface ponding depth for each filter media blend in the table above.<br>
 
* Step 3: Select a design surface ponding depth, d<sub>p</sub>' (m) to begin sizing with<br>
 
* Step 3: Select a design surface ponding depth, d<sub>p</sub>' (m) to begin sizing with<br>
For practices with soft (i.e. landscaped) edges and bowl-shaped ponding areas calculate the mean ponding depth:
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For practices with soft (i.e. landscaped) edges and bowl-shaped ponding areas calculate the mean surface ponding depth:
 
<math>d_{p}'=d_{p, max}\times 1/2</math>
 
<math>d_{p}'=d_{p, max}\times 1/2</math>
For practices with hard edges and vertical-walled ponding areas (e.g., stormwater planter, soil cell) use the maximum ponding depth (d<sub>p, max</sub>)
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For practices with hard edges and vertical-walled ponding areas (e.g., stormwater planter, soil cell) use the maximum ponding depth:
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<math>(d_{p}'=d_{p, max}
    
* Step 4: Determine the active storage depth, d<sub>a</sub> of the practice<br>
 
* Step 4: Determine the active storage depth, d<sub>a</sub> of the practice<br>

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